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- J.P.M.M.Lamego,C.Dalvi.A Numerical-Based Fuzzy PID Controller Applied To A DC Drive[J].IEEE. 杨公源.;微机在机电一体化传动系统中的应用[M]
- It obtains good effect that the fuzzy PID control applied in the process of auto-discharging. 将模糊PID控制算法应用于系统的自动排料过程,取得了明显效果。
- The results of experiments show that AC servo system based on fuzzy PID control has quick response speed, high steady accuracy and good robustness. 实验结果表明,基于模糊PID控制的交流伺服系统具有响应速度快、稳态精度高和鲁棒性强等特点。
- The results show that the fuzzy PID control has reduced paranormal value,made the system have quick response,and well dynamic performance. 本文建立了变量泵/马达控制系统的数学模型,采用模糊PID控制对控制系统进行了仿真分析,结果表明模糊PID控制减小了系统响应的超调量,加快了系统响应时间,使系统具有良好的动态性能。
- Therefore, Fuzzy PID control is considered as one of the most prospective methods to resolve control problems of hydro-turbine regulating system. 采用模糊PID控制被认为是解决水轮机调节系统控制问题最具发展前景的方向之一。
- The simulation results indicated that the Bumpless Transfer fuzzy PID dual mode control can ensure the speediness and stability of the system. 仿真结果表明,采用无撞击切换模糊PID双重控制保证了系统的快速和稳态性能好。
- The intelligent batching system mainly aims at the batching technique in rubber industry, realized with an adaptive fuzzy PID controller. 课题所研究的配料称量系统主要针对于橡胶行业的配料环节,采用了自适应模糊PID控制技术,实现了对橡胶配料过程的自动化控制。
- It proposes one way to mix program MATLAB and Borland C++ Builder on the base of COM (Component Object Model) technology and designs self-adopted fuzzy PID controller. 然后文章提出了一种利用COM(Component Object Model)技术的方法实现了MATLAB和Borland C++ Builder的混合编程,并设计实现了一种自适应模糊PID控制器。
- The application of DSP is providing a hardware basis for the realization of the algorithm, which makes the fuzzy PID control of the brushless DC motor possible. 数字信号处理器(DSP)的应用为该算法的实现提供了硬件基础,使无刷直流电机的模糊PID控制成为可能。
- We will use the fuzzy theory to the application of the PID controller design,and produced the fuzzy PID controller design method,in which the parameters might adjust. 我们将模糊控制理论应用于PID控制器的设计,给出了参数可调整的模糊PID控制器的设计方法。
- Fuzzy control theory has been used to design the software and hardware of a fuzzy PID digital governor and realize the on - line real time adjustment of PID control paramters. 采用模糊控制原理,进行了模糊PID数字调速器的软硬件设计,实现了PID控制参数的在线实时调节。
- A new control algorithm with neural network and fuzzy PID for aircraft antiskid braking system is presented, and tested on inertia anolog experiment platform. 基于以上因素,以飞机防滑刹车系统为对象,提出了一种新的神经网络模糊PID混合控制算法,并在惯性模拟实验台测试。
- Abstract:The fuzzy PID control algorithm is presented not only to improve the transient time but also to reduce the overshoot and enhance the tracking accuracy. 摘要:提出一种模糊PID控制算法,既能改善控制系统的过渡过程、减小超调量,又能保证系统跟踪位置精度。
- In this dissertation, the basic theory, and its applications in aero-engine control system design of fuzzy control, fuzzy PID control, and MOGA is studied. 本文对模糊控制、模糊PID控制和多目标遗传算法的基本理论以及在航空发动机控制系统中的应用进行了较为全面的研究。
- Based on this, Fuzzy PID Controller applied to jigger discharging system is designed with simulation by MATLAB, analysis in detail to the control effect is processed. 在此基础上设计了适用于跳汰机排料系统的模糊PID控制器,利用MATLAB进行仿真,对控制效果进行了详细的分析。
- This paper introduces a fuzzy PID controller for the Thermal Electric Cooler (TEC).It is a high accuracy TEC temperature control system based on MSP430F449. 摘要本文介绍了模糊PID控制器原理,针对半导体制冷器(TEC)工作特性,用MSP430F449单片机设计了高精度TEC温度控制系统。
- Based on this, Fuzzy PID Controller applied to single room jigger servo system is designed with simulation by MATLAB, analysis in detail to the control effect is processed. 在此基础上设计了适用于单室跳汰伺服系统的模糊P功控制器,利用MATLAB进行仿真,并对控制效果进行了详细的分析。
- The simulation result indicated that, based on the data fusion fuzzy PID algorithm may enhance the manipulative precision and robustness under the same condition, it may simultaneou... 仿真结果表明,在相同的条件下,基于数据融合的模糊PID算法可以提高控制的精度及鲁棒性,同时可以达到节能效果。
- The fuzzy PID control method was proposed to meet the special control request of the stove temperature and pressure in the sphere silica flour production process,which in fact has achieved the control request in the production process. 针对球形硅微粉生产过程中球化炉温度,压力的特殊控制要求,提出了采用模糊PID控制的方法和算法,达到了生产过程中温度、压力的控制要求。
- The fuzzy control strategy is used for short period prediction of the microwave power and a fuzzy PID controller is used to control the trigger angle of Silicon Controlled Rectifier (SCR). 利用硬件超调自动保护电路和模糊PID控制技术对医用微波治疗仪功率控制系统进行了设计,并简要介绍了该仪器的原理及功能。